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Laser-written photonic crystal optofluidics for electrochromatography and spectroscopy on a chip

机译:激光写入的光子晶体光流体用于芯片上的电色谱和光谱

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摘要

Femtosecond laser processes were optimized for nonlinear interactions with various optical materials to develop a novel biophotonic lab-on-a-chip device that integrates laser-formed waveguides (WGs), microfluidic channels and photonic crystals (PCs). Such integration seeks the unique demonstration of dual PC functionalities: (1) efficient chromatographic separation and filtration of analytes through a porous PC embedded inside a microfluidic channel and (2) optofluidic spectroscopy through embedded WGs that probe PC stopband shifts as varying analyte concentrations flow and separate. The building blocks together with their integration were demonstrated, providing embedded porous PCs through which electrochromatography drove an accelerated mobile phase of analyte and an optical stopband was probed via integrated buried WGs. Together, these laboratory results underpin the promise of simultaneous chromatographic and spectroscopic capabilities in a single PC optofluidic device.
机译:飞秒激光工艺经过优化,可与各种光学材料进行非线性相互作用,从而开发出一种新颖的生物光子片上实验室设备,该设备集成了激光形成的波导(WG),微流体通道和光子晶体(PC)。这种集成寻求双重PC功能的独特展示:(1)通过嵌入微流体通道内的多孔PC进行有效的色谱分离和分析物过滤;(2)通过嵌入的WG进行光流体光谱分析,该WG检测随着不同分析物浓度的流动而PC阻带的移动,以及分离。演示了这些构建模块及其集成,提供了嵌入式多孔PC,通过该PC,电色谱驱动了分析物的加速流动相,并通过集成的埋入式WG探测了光学阻带。总之,这些实验室结果证明了在单个PC光流体设备中同时实现色谱和光谱功能的希望。

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